A Priority-Aware Piggybacking-Based Energy-Efficient MAC Protocol Using Bit Mapping

Battery-powered IoT sensor nodes require energy-efficient Medium Access Control (MAC) protocols to extend network lifetime while supporting priority-sensitive traffic. This paper proposes a Priority-Aware Packet Aggregation/Piggybacking-Based (Priority + Packet Aggregation) Hybrid Energy-Efficient MAC (P2A-HMAC) protocol that integrates bit-mapped priority signaling with lightweight packet aggregation/piggybacking to reduce control overhead. The protocol classifies traffic into emergency, buffer-overflow, priority, and normal categories, providing guaranteed access to delay-sensitive data while minimizing radio activity, idle listening, and contention. A mathematical energy model is developed for both priority- and contention-based operations. MATLAB-based evaluation demonstrates that P2A-HMAC consistently achieves lower energy consumption than TDMA, EA-TDMA, ASHMAC, E-BMA, and P2A-HMAC across varying network sizes, packet sizes, and event-generation probabilities. The proposed protocol provides substantial energy savings, particularly in large-scale and moderate-traffic networks, while maintaining priority-aware communication and QoS, making it suitable for low-power IoT and wireless sensor network applications.

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Publication Details

Journal
Journal of Low Power Electronics and Applications
Published
2026-09-01
DOI
https://doi.org/10.3390/jlpea16030034
Primary Topic
Energy Efficient Wireless Sensor Networks
Type
article
Field-Weighted Citation Impact
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article

A Priority-Aware Piggybacking-Based Energy-Efficient MAC Protocol Using Bit Mapping

Gaurav Suman, Manoj Tolani, Himanshu Chaudhary, Simmi Sharma et al.
Journal of Low Power Electronics and Applications
Energy Efficient Wireless Sensor Networks
article

A Priority-Aware Piggybacking-Based Energy-Efficient MAC Protocol Using Bit Mapping

Gaurav Suman, Manoj Tolani, Himanshu Chaudhary, Simmi Sharma, Tanvi Mishra, Pankaj Kumar
article en

Abstract

Battery-powered IoT sensor nodes require energy-efficient Medium Access Control (MAC) protocols to extend network lifetime while supporting priority-sensitive traffic. This paper proposes a Priority-Aware Packet Aggregation/Piggybacking-Based (Priority + Packet Aggregation) Hybrid Energy-Efficient MAC (P2A-HMAC) protocol that integrates bit-mapped priority signaling with lightweight packet aggregation/piggybacking to reduce control overhead. The protocol classifies traffic into emergency, buffer-overflow, priority, and normal categories, providing guaranteed access to delay-sensitive data while minimizing radio activity, idle listening, and contention. A mathematical energy model is developed for both priority- and contention-based operations. MATLAB-based evaluation demonstrates that P2A-HMAC consistently achieves lower energy consumption than TDMA, EA-TDMA, ASHMAC, E-BMA, and P2A-HMAC across varying network sizes, packet sizes, and event-generation probabilities. The proposed protocol provides substantial energy savings, particularly in large-scale and moderate-traffic networks, while maintaining priority-aware communication and QoS, making it suitable for low-power IoT and wireless sensor network applications.

Journal of Low Power Electronics and ApplicationsVol. 16(3)
Jaypee Institute of Information Technology (IN), Manipal Academy of Higher Education (IN)
Affordable and clean energy
Openalex Percentile: Top 8%
Energy Efficient Wireless Sensor Networks
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